Soil surface erosion, a process of removing earth materials such as soils or rocks by flows and/or waves, poses significant threats to the environment, infrastructure, and economy. The erodibility of soil is profoundly influenced by the physicochemical properties of both soil and eroding fluids; however, these effects are not yet fully understood. Therefore, it is essential to establish a clear relationship between these physicochemical factors and soil erodibility. Significant progress has been made over the past few decades in understanding how factors such as temperature, pH, and salt concentration affect soil erosion behaviour. Despite this progress, the results often remain inconsistent and difficult to apply in practice due to variations in research methodologies and an incomplete understanding of erosion mechanisms. This paper reviews and synthesises existing research on the physicochemical effects of soils and fluids on the erodibility of different soil types, addressing these inconsistencies by proposing the Mechanistic Hierarchy Hypothesis, which identifies background salt concentration as the master variable modulating soil sensitivity to secondary drivers like temperature and pH. Furthermore, we discuss recent advancements in sensing technologies that enable high-precision soil–water interface temperature monitoring and erodibility quantification. Finally, this paper outlines practical implications for climate-adaptive infrastructure design and sustainable stabilisation methods, serving as a forward-looking guide for future soil erosion research.
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Research Article|
August 07 2026
Impact of soil and fluid physicochemical properties on erodibility: a review
Mingda Lyu
;
Mingda Lyu
Department of Civil Engineering,
University of Victoria
, Victoria, Canada
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Yunjie Lin
;
Yunjie Lin
Stantec Consulting Ltd
., Burnaby, Canada
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Min Sun
;
Min Sun
Department of Civil Engineering,
University of Victoria
, Victoria, Canada
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Cheng Lin
Department of Civil Engineering,
University of Victoria
, Victoria, Canada
Corresponding author Cheng Lin (chenglin918@uvic.ca)
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Corresponding author Cheng Lin (chenglin918@uvic.ca)
Publisher: Emerald Publishing
Received:
November 06 2025
Accepted:
March 30 2026
Online ISSN: 2051-803X
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Environmental Geotechnics 1–27.
Article history
Received:
November 06 2025
Accepted:
March 30 2026
Citation
Lyu M, Lin Y, Sun M, Lin C (2026;), "Impact of soil and fluid physicochemical properties on erodibility: a review". Environmental Geotechnics, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jenge.25.00203
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